First, the batching calculation according to the following conditions
(1) To refining carbon manganese iron component is: w (Mn)> 78% , w (C) from about 1.25%, w (P) < 0.25%, w (Si) 1.5%.
(2) The raw material components are shown in Table 1.
Table 1 Â Raw material composition (%) | ||||||||
name | Mn | P | C | Si | Fe | CaO | MgO | SiO 2 |
Mixed manganese ore | 40 | 0.09 | 1.25 | 19 | 5.3 | 0.5 | 0.4 | 14 |
Manganese silicon alloy | 67 | 0.16 |   |   | ||||
lime |   |   | 85 | 0.7 |
(3) The distribution of each element in manganese ore is shown in Table 2.
Table 2 Â Element allocation (%) | |||
element | Into the alloy | Slag | Volatilization |
Mn | 30 | 50 | 20 |
Fe | 90 | 10 |   |
P | 70 | 5 | 25 |
(4) The elements in the manganese-silicon alloy are distributed as follows: 8% silicon into the alloy, silicon utilization rate is 75% (excluding 8% entering the alloy), and manganese, iron and phosphorus are 100% into the alloy.
(5) slag basicity n (CaO) / n (SiO 2 ) = 1.4.
(6) Based on the calculation of 100kg manganese ore, the amount of manganese-silicon alloy and the amount of lime are required.
Second, the ingredients calculation
(1) Calculation of the amount of manganese-silicon alloy The calculation of the amount of silicon required is shown in Table 3.
The amount of manganese silicon alloy is
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(2) Calculation of lime dosage The amount of SiO 2 introduced by manganese ore is 100×0.14=14 (kg)
The amount of SiO 2 formed by silicon in the manganese-silicon alloy is
The batch composition is: manganese ore 100kg; manganese silicon alloy 72.56kg; lime 68kg.
(3) Calculation of alloy quality and composition The sum of the elements of manganese silicon alloy entering the product is 72.56-72.56×0.19×0.92=59.87(kg)
The amount of manganese in the manganese ore is 100×0.4×0.3=12 (kg)
The amount of phosphorus in the manganese ore is 100×0.0009×0.7=0.06(kg)
The total amount of alloy is 59.87+12+4.77+0.06=76.70(kg)
Alloy composition is
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(4) Calculation of the amount of slag and its composition The number and composition of slag are shown in Table 4.
Table 4 Â Slag quantity and composition | |||||
ingredient | From manganese ore (kg) | From manganese silicon alloy (kg) | From lime (kg) | Total (kg) | Slag composition content /% |
MnO | 10 0×0.4×0.5×71/55=25.82 |   |   | 25.82 | 19.477 |
SiO 2 | 100×0.14=14 | 27.174 | 6 8×0.007=0.476 | 41.65 | 31.419 |
CaO | 100×0.005=0.5 |   | 6 8×0.85=57.8 | 58.3 | 43.98 |
MgO | 100×0.004=0.4 |   |   | 0.4 | 0.301 |
Al 2 O 3 | 100×0.57=5.7 |   |   | 5.7 | 4.299 |
FeO | 100×0.053×0.1×72/56=0.68 |   |   | 0.68 | 0.512 |
P 2 O 5 | 100×0.0009×0.05×1.42/62=0.01 |   |   | 0.01 | 0.0057 |
total | 47.11 | 27.174 | 58276 | 132.56 | 100 |
From the above calculation results, the ratio of slag amount to alloy yield can be obtained:
The amount of manganese recovered is calculated as follows:
The manganese in the furnace is: 100×0.4+72.56×0.67=88.6152
Alloy manganese is: 72.56×0.67+12=60.6152
The recovery rate of manganese is: 60.6152/88.615=68.4%
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